1 /* 2 ******************************************************************************* 3 * 4 * Copyright (C) 1999-2008, International Business Machines 5 * Corporation and others. All Rights Reserved. 6 * 7 ******************************************************************************* 8 * file name: GDIFontInstance.cpp 9 * 10 * created on: 08/09/2000 11 * created by: Eric R. Mader 12 */ 13 14 #include <windows.h> 15 16 #include "layout/LETypes.h" 17 #include "layout/LESwaps.h" 18 #include "layout/LEFontInstance.h" 19 20 #include "GDIFontInstance.h" 21 #include "sfnt.h" 22 #include "cmaps.h" 23 24 GDISurface::GDISurface(HDC theHDC) 25 : fHdc(theHDC), fCurrentFont(NULL) 26 { 27 // nothing else to do 28 } 29 30 GDISurface::~GDISurface() 31 { 32 // nothing to do 33 } 34 35 void GDISurface::setHDC(HDC theHDC) 36 { 37 fHdc = theHDC; 38 fCurrentFont = NULL; 39 } 40 41 void GDISurface::setFont(const GDIFontInstance *font) 42 { 43 #if 0 44 if (fCurrentFont != font) { 45 fCurrentFont = font; 46 SelectObject(fHdc, font->getFont()); 47 } 48 #else 49 SelectObject(fHdc, font->getFont()); 50 #endif 51 } 52 53 void GDISurface::drawGlyphs(const LEFontInstance *font, const LEGlyphID *glyphs, le_int32 count, const float *positions, 54 le_int32 x, le_int32 y, le_int32 width, le_int32 height) 55 { 56 TTGlyphID *ttGlyphs = LE_NEW_ARRAY(TTGlyphID, count); 57 le_int32 *dx = LE_NEW_ARRAY(le_int32, count); 58 float *ps = LE_NEW_ARRAY(float, count * 2 + 2); 59 le_int32 out = 0; 60 RECT clip; 61 62 clip.top = 0; 63 clip.left = 0; 64 clip.bottom = height; 65 clip.right = width; 66 67 for (le_int32 g = 0; g < count; g += 1) { 68 TTGlyphID ttGlyph = (TTGlyphID) LE_GET_GLYPH(glyphs[g]); 69 70 if (ttGlyph < 0xFFFE) { 71 ttGlyphs[out] = ttGlyph; 72 dx[out] = (le_int32) (positions[g * 2 + 2] - positions[g * 2]); 73 ps[out * 2] = positions[g * 2]; 74 ps[out * 2 + 1] = positions[g * 2 + 1]; 75 out += 1; 76 } 77 } 78 79 le_int32 dyStart, dyEnd; 80 81 setFont((GDIFontInstance *) font); 82 83 dyStart = dyEnd = 0; 84 85 while (dyEnd < out) { 86 float yOffset = ps[dyStart * 2 + 1]; 87 float xOffset = ps[dyStart * 2]; 88 89 while (dyEnd < out && yOffset == ps[dyEnd * 2 + 1]) { 90 dyEnd += 1; 91 } 92 93 ExtTextOut(fHdc, x + (le_int32) xOffset, y + (le_int32) yOffset - font->getAscent(), ETO_CLIPPED | ETO_GLYPH_INDEX, &clip, 94 (LPCWSTR) &ttGlyphs[dyStart], dyEnd - dyStart, (INT *) &dx[dyStart]); 95 96 dyStart = dyEnd; 97 } 98 99 LE_DELETE_ARRAY(ps); 100 LE_DELETE_ARRAY(dx); 101 LE_DELETE_ARRAY(ttGlyphs); 102 } 103 104 GDIFontInstance::GDIFontInstance(GDISurface *surface, TCHAR *faceName, le_int16 pointSize, LEErrorCode &status) 105 : FontTableCache(), fSurface(surface), fFont(NULL), 106 fPointSize(pointSize), fUnitsPerEM(0), fAscent(0), fDescent(0), fLeading(0), 107 fDeviceScaleX(1), fDeviceScaleY(1), fMapper(NULL) 108 { 109 LOGFONT lf; 110 FLOAT dpiX, dpiY; 111 POINT pt; 112 OUTLINETEXTMETRIC otm; 113 HDC hdc = surface->getHDC(); 114 115 if (LE_FAILURE(status)) { 116 return; 117 } 118 119 SaveDC(hdc); 120 121 SetGraphicsMode(hdc, GM_ADVANCED); 122 ModifyWorldTransform(hdc, NULL, MWT_IDENTITY); 123 SetViewportOrgEx(hdc, 0, 0, NULL); 124 SetWindowOrgEx(hdc, 0, 0, NULL); 125 126 dpiX = (FLOAT) GetDeviceCaps(hdc, LOGPIXELSX); 127 dpiY = (FLOAT) GetDeviceCaps(hdc, LOGPIXELSY); 128 129 #if 1 130 pt.x = (int) (pointSize * dpiX / 72); 131 pt.y = (int) (pointSize * dpiY / 72); 132 133 DPtoLP(hdc, &pt, 1); 134 #else 135 pt.x = pt.y = pointSize; 136 #endif 137 138 lf.lfHeight = - pt.y; 139 lf.lfWidth = 0; 140 lf.lfEscapement = 0; 141 lf.lfOrientation = 0; 142 lf.lfWeight = 0; 143 lf.lfItalic = 0; 144 lf.lfUnderline = 0; 145 lf.lfStrikeOut = 0; 146 lf.lfCharSet = DEFAULT_CHARSET; 147 lf.lfOutPrecision = 0; 148 lf.lfClipPrecision = 0; 149 lf.lfQuality = 0; 150 lf.lfPitchAndFamily = 0; 151 152 lstrcpy(lf.lfFaceName, faceName); 153 154 fFont = CreateFontIndirect(&lf); 155 156 if (fFont == NULL) { 157 status = LE_FONT_FILE_NOT_FOUND_ERROR; 158 return; 159 } 160 161 SelectObject(hdc, fFont); 162 163 UINT ret = GetOutlineTextMetrics(hdc, sizeof otm, &otm); 164 165 if (ret == 0) { 166 status = LE_MISSING_FONT_TABLE_ERROR; 167 goto restore; 168 } 169 170 fUnitsPerEM = otm.otmEMSquare; 171 fAscent = otm.otmTextMetrics.tmAscent; 172 fDescent = otm.otmTextMetrics.tmDescent; 173 fLeading = otm.otmTextMetrics.tmExternalLeading; 174 175 status = initMapper(); 176 177 if (LE_FAILURE(status)) { 178 goto restore; 179 } 180 181 #if 0 182 status = initFontTableCache(); 183 #endif 184 185 restore: 186 RestoreDC(hdc, -1); 187 } 188 189 GDIFontInstance::GDIFontInstance(GDISurface *surface, const char *faceName, le_int16 pointSize, LEErrorCode &status) 190 : FontTableCache(), fSurface(surface), fFont(NULL), 191 fPointSize(pointSize), fUnitsPerEM(0), fAscent(0), fDescent(0), fLeading(0), 192 fDeviceScaleX(1), fDeviceScaleY(1), fMapper(NULL) 193 { 194 LOGFONTA lf; 195 FLOAT dpiX, dpiY; 196 POINT pt; 197 OUTLINETEXTMETRIC otm; 198 HDC hdc = surface->getHDC(); 199 200 if (LE_FAILURE(status)) { 201 return; 202 } 203 204 SaveDC(hdc); 205 206 SetGraphicsMode(hdc, GM_ADVANCED); 207 ModifyWorldTransform(hdc, NULL, MWT_IDENTITY); 208 SetViewportOrgEx(hdc, 0, 0, NULL); 209 SetWindowOrgEx(hdc, 0, 0, NULL); 210 211 dpiX = (FLOAT) GetDeviceCaps(hdc, LOGPIXELSX); 212 dpiY = (FLOAT) GetDeviceCaps(hdc, LOGPIXELSY); 213 214 fDeviceScaleX = dpiX / 72; 215 fDeviceScaleY = dpiY / 72; 216 217 #if 1 218 pt.x = (int) (pointSize * fDeviceScaleX); 219 pt.y = (int) (pointSize * fDeviceScaleY); 220 221 DPtoLP(hdc, &pt, 1); 222 #else 223 pt.x = pt.y = pointSize; 224 #endif 225 226 lf.lfHeight = - pt.y; 227 lf.lfWidth = 0; 228 lf.lfEscapement = 0; 229 lf.lfOrientation = 0; 230 lf.lfWeight = 0; 231 lf.lfItalic = 0; 232 lf.lfUnderline = 0; 233 lf.lfStrikeOut = 0; 234 lf.lfCharSet = DEFAULT_CHARSET; 235 lf.lfOutPrecision = 0; 236 lf.lfClipPrecision = 0; 237 lf.lfQuality = 0; 238 lf.lfPitchAndFamily = 0; 239 240 strcpy(lf.lfFaceName, faceName); 241 242 fFont = CreateFontIndirectA(&lf); 243 244 if (fFont == NULL) { 245 status = LE_FONT_FILE_NOT_FOUND_ERROR; 246 return; 247 } 248 249 SelectObject(hdc, fFont); 250 251 UINT ret = GetOutlineTextMetrics(hdc, sizeof otm, &otm); 252 253 if (ret != 0) { 254 fUnitsPerEM = otm.otmEMSquare; 255 fAscent = otm.otmTextMetrics.tmAscent; 256 fDescent = otm.otmTextMetrics.tmDescent; 257 fLeading = otm.otmTextMetrics.tmExternalLeading; 258 } else { 259 const HEADTable *headTable = NULL; 260 const HHEATable *hheaTable = NULL; 261 262 // read unitsPerEm from 'head' table 263 headTable = (const HEADTable *) readFontTable(LE_HEAD_TABLE_TAG); 264 265 if (headTable == NULL) { 266 status = LE_MISSING_FONT_TABLE_ERROR; 267 goto restore; 268 } 269 270 fUnitsPerEM = SWAPW(headTable->unitsPerEm); 271 freeFontTable((const void *)headTable); 272 273 hheaTable = (HHEATable *) readFontTable(LE_HHEA_TABLE_TAG); 274 275 if (hheaTable == NULL) { 276 status = LE_MISSING_FONT_TABLE_ERROR; 277 goto restore; 278 } 279 280 fAscent = (le_int32) yUnitsToPoints((float) SWAPW(hheaTable->ascent)); 281 fDescent = (le_int32) yUnitsToPoints((float) SWAPW(hheaTable->descent)); 282 fLeading = (le_int32) yUnitsToPoints((float) SWAPW(hheaTable->lineGap)); 283 284 freeFontTable((const void *) hheaTable); 285 } 286 287 status = initMapper(); 288 289 if (LE_FAILURE(status)) { 290 goto restore; 291 } 292 293 #if 0 294 status = initFontTableCache(); 295 #endif 296 297 restore: 298 RestoreDC(hdc, -1); 299 } 300 301 GDIFontInstance::~GDIFontInstance() 302 { 303 #if 0 304 flushFontTableCache(); 305 delete[] fTableCache; 306 #endif 307 308 if (fFont != NULL) { 309 // FIXME: call RemoveObject first? 310 DeleteObject(fFont); 311 } 312 313 delete fMapper; 314 fMapper = NULL; 315 } 316 317 LEErrorCode GDIFontInstance::initMapper() 318 { 319 LETag cmapTag = LE_CMAP_TABLE_TAG; 320 const CMAPTable *cmap = (const CMAPTable *) readFontTable(cmapTag); 321 322 if (cmap == NULL) { 323 return LE_MISSING_FONT_TABLE_ERROR; 324 } 325 326 fMapper = CMAPMapper::createUnicodeMapper(cmap); 327 328 if (fMapper == NULL) { 329 return LE_MISSING_FONT_TABLE_ERROR; 330 } 331 332 return LE_NO_ERROR; 333 } 334 335 const void *GDIFontInstance::getFontTable(LETag tableTag) const 336 { 337 return FontTableCache::find(tableTag); 338 } 339 340 const void *GDIFontInstance::readFontTable(LETag tableTag) const 341 { 342 fSurface->setFont(this); 343 344 HDC hdc = fSurface->getHDC(); 345 DWORD stag = SWAPL(tableTag); 346 DWORD len = GetFontData(hdc, stag, 0, NULL, 0); 347 void *result = NULL; 348 349 if (len != GDI_ERROR) { 350 result = LE_NEW_ARRAY(char, len); 351 GetFontData(hdc, stag, 0, result, len); 352 } 353 354 return result; 355 } 356 357 void GDIFontInstance::getGlyphAdvance(LEGlyphID glyph, LEPoint &advance) const 358 { 359 advance.fX = 0; 360 advance.fY = 0; 361 362 if (glyph == 0xFFFE || glyph == 0xFFFF) { 363 return; 364 } 365 366 367 GLYPHMETRICS metrics; 368 DWORD result; 369 MAT2 identity = {{0, 1}, {0, 0}, {0, 0}, {0, 1}}; 370 HDC hdc = fSurface->getHDC(); 371 372 fSurface->setFont(this); 373 374 result = GetGlyphOutline(hdc, glyph, GGO_GLYPH_INDEX | GGO_METRICS, &metrics, 0, NULL, &identity); 375 376 if (result == GDI_ERROR) { 377 return; 378 } 379 380 advance.fX = metrics.gmCellIncX; 381 return; 382 } 383 384 le_bool GDIFontInstance::getGlyphPoint(LEGlyphID glyph, le_int32 pointNumber, LEPoint &point) const 385 { 386 #if 0 387 hsFixedPoint2 pt; 388 le_bool result; 389 390 result = fFontInstance->getGlyphPoint(glyph, pointNumber, pt); 391 392 if (result) { 393 point.fX = xUnitsToPoints(pt.fX); 394 point.fY = yUnitsToPoints(pt.fY); 395 } 396 397 return result; 398 #else 399 return FALSE; 400 #endif 401 } 402 403